TY - JOUR
T1 - The DESI DR1 peculiar velocity survey
T2 - growth rate measurements from the galaxy power spectrum
AU - DESI Collaboration
AU - Qin, F.
AU - Blake, C.
AU - Howlett, C.
AU - Turner, R. J.
AU - Lodha, K.
AU - Bautista, J.
AU - Amsellem, A. J.
AU - Aguilar, J.
AU - Ahlen, S.
AU - Bianchi, D.
AU - Brooks, D.
AU - BenZvi, S.
AU - Carr, A.
AU - Chaussidon, E.
AU - Claybaugh, T.
AU - Cuceu, A.
AU - Macorra, A. de la
AU - Douglass, K.
AU - Doel, P.
AU - Ferraro, S.
AU - Font-Ribera, A.
AU - Forero-Romero, J. E.
AU - Gaztañaga, E.
AU - Gontcho, S. Gontcho A
AU - Gutierrez, G.
AU - Guy, J.
AU - Herrera-Alcantar, H. K.
AU - Honscheid, K.
AU - Huterer, D.
AU - Ishak, M.
AU - Joyce, R.
AU - Kim, A. G.
AU - Kirkby, D.
AU - Kisner, T.
AU - Kremin, A.
AU - Lahav, O.
AU - Lamman, C.
AU - Landriau, M.
AU - Guillou, L. Le
AU - Levi, M. E.
AU - Manera, M.
AU - Meisner, A.
AU - Miquel, R.
AU - Moustakas, J.
AU - Muñoz-Gutiérrez, A.
AU - Nadathur, S.
AU - Palanque-Delabrouille, N.
AU - Percival, W. J.
AU - Poppett, C.
AU - Prada, F.
N1 - 27 pages, 20 figures, 5 tables. In Astronomy & Astrophysics. The public code of power spectrum measurements, power spectrum theoretical models and window function convolution are available at https://github.com/FeiQin-cosmologist/Galaxy_Power_Spectrum
PY - 2026/4/8
Y1 - 2026/4/8
N2 - The large-scale structure of the Universe and its evolution encapsulate a wealth of cosmological information. A powerful means of unlocking this knowledge lies in measuring the auto-power spectrum and/or the cross-power spectrum of the galaxy density and momentum fields, followed by the estimation of cosmological parameters based on these spectrum measurements. In this study, we generalize the cross-power spectrum model to accommodate scenarios where the density and momentum fields are derived from distinct galaxy surveys. The growth rate of the large-scale structures of the Universe, commonly represented as $fσ_8$, is extracted by jointly fitting the monopole and quadrupole moments of the auto-density power spectrum, the monopole of the auto-momentum power spectrum, and the dipole of the cross-power spectrum. Our estimators, theoretical models and parameter-fitting framework have been tested using mocks, confirming their robustness and accuracy in retrieving the fiducial growth rate from simulation. These techniques are then applied to analyze the power spectrum of the DESI Bright Galaxy Survey and Peculiar Velocity Survey, and the fit result of the growth rate is $fσ_8=0.440^{+0.080}_{-0.096}$ at effective redshift $z_{\rm eff}=0.07$. By synthesizing the fitting outcomes from correlation functions, maximum likelihood estimation and power spectrum, yields a consensus value of $fσ_8(z_{\rm eff}=0.07) = 0.450 ^{+0.055}_{-0.055}$, and correspondingly we obtain $γ=0.580^{+0.110}_{-0.110}$, $Ω_\mathrm{m}=0.301^{+0.011}_{-0.011}$ and $σ_8=0.834^{+0.032}_{-0.032}$. The measured $fσ_8$ and $γ$ are consistent with the prediction of the $Λ$ Cold Dark Matter Model and General Relativity.
AB - The large-scale structure of the Universe and its evolution encapsulate a wealth of cosmological information. A powerful means of unlocking this knowledge lies in measuring the auto-power spectrum and/or the cross-power spectrum of the galaxy density and momentum fields, followed by the estimation of cosmological parameters based on these spectrum measurements. In this study, we generalize the cross-power spectrum model to accommodate scenarios where the density and momentum fields are derived from distinct galaxy surveys. The growth rate of the large-scale structures of the Universe, commonly represented as $fσ_8$, is extracted by jointly fitting the monopole and quadrupole moments of the auto-density power spectrum, the monopole of the auto-momentum power spectrum, and the dipole of the cross-power spectrum. Our estimators, theoretical models and parameter-fitting framework have been tested using mocks, confirming their robustness and accuracy in retrieving the fiducial growth rate from simulation. These techniques are then applied to analyze the power spectrum of the DESI Bright Galaxy Survey and Peculiar Velocity Survey, and the fit result of the growth rate is $fσ_8=0.440^{+0.080}_{-0.096}$ at effective redshift $z_{\rm eff}=0.07$. By synthesizing the fitting outcomes from correlation functions, maximum likelihood estimation and power spectrum, yields a consensus value of $fσ_8(z_{\rm eff}=0.07) = 0.450 ^{+0.055}_{-0.055}$, and correspondingly we obtain $γ=0.580^{+0.110}_{-0.110}$, $Ω_\mathrm{m}=0.301^{+0.011}_{-0.011}$ and $σ_8=0.834^{+0.032}_{-0.032}$. The measured $fσ_8$ and $γ$ are consistent with the prediction of the $Λ$ Cold Dark Matter Model and General Relativity.
KW - astro-ph.CO
KW - cosmological parameters
KW - large-scale structure of Universe
U2 - 10.1051/0004-6361/202558368
DO - 10.1051/0004-6361/202558368
M3 - Article
SN - 0004-6361
VL - 708
JO - Astronomy and Astrophysics
JF - Astronomy and Astrophysics
M1 - A219
ER -